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Bioreactor mechanically guided 3D mesenchymal stem cell chondrogenesis using a biocompatible novel thermo-reversible methylcellulose-based hydrogel

机译:生物反应器机械引导3D间充质干细胞软骨发生,使用生物相容性新型热可逆甲基纤维素的水凝胶

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Autologous chondrocyte implantation for cartilage repair represents a challenge because strongly limited by chondrocytes’ poor expansion capacity in vitro. Mesenchymal stem cells (MSCs) can differentiate into chondrocytes, while mechanical loading has been proposed as alternative strategy to induce chondrogenesis excluding the use of exogenous factors. Moreover, MSC supporting material selection is fundamental to allow for an active interaction with cells. Here, we tested a novel thermo-reversible hydrogel composed of 8% w/v methylcellulose (MC) in a 0.05?M Na2SO4 solution. MC hydrogel was obtained by dispersion technique and its thermo-reversibility, mechanical properties, degradation and swelling were investigated, demonstrating a solution-gelation transition between 34 and 37?°C and a low bulk degradation (20%) after 1 month. The lack of any hydrogel-derived immunoreaction was demonstrated in vivo by mice subcutaneous implantation. To induce in vitro chondrogenesis, MSCs were seeded into MC solution retained within a porous polyurethane (PU) matrix. PU-MC composites were subjected to a combination of compression and shear forces for 21 days in a custom made bioreactor. Mechanical stimulation led to a significant increase in chondrogenic gene expression, while histological analysis detected sulphated glycosaminoglycans and collagen II only in loaded specimens, confirming MC hydrogel suitability to support load induced MSCs chondrogenesis.
机译:软骨修复的自体软骨细胞植入是一种挑战,因为受软骨细胞在体外强烈限制的膨胀能力。间充质干细胞(MSCs)可以分化为软骨细胞,而机械负载已经提出作为诱导软骨发生的替代策略,除了使用外源因素。此外,MSC支撑材料选择是允许与细胞的有效相互作用的基础。在此,我们测试了一种新的热可逆水凝胶,其由0.05℃的8%w / v甲基纤维素(MC)组成。通过分散技术得到MC水凝胶,研究了其热可逆性,机械性能,降解和溶胀,在1个月后显示出34至37℃的溶液 - 凝胶化转变和低大容量降解(<20%)。通过小鼠皮下植入缺乏任何水凝胶衍生的免疫力反应。为了诱导体外软骨发生,将MSC接种到保留在多孔聚氨酯(PU)基质内的MC溶液中。在定制的生物反应器中对PU-MC复合材料进行压缩和剪切力的组合21天。机械刺激导致软骨基因表达的显着增加,而组织学分析仅在负载标本中检测硫酸化糖胺聚糖和胶原II,确认MC水凝胶适合支持载荷诱导的MSC软骨发生。

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